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氢键簇中的网络分析与渗流转变:磷酸三丁酯萃取硝酸和水

Network analysis and percolation transition in hydrogen bonded clusters: nitric acid and water extracted by tributyl phosphate.

作者信息

Servis Michael J, Wu David T, Braley Jenifer C

机构信息

Colorado School of Mines, 1500 Illinois St., Golden, CO, USA.

出版信息

Phys Chem Chem Phys. 2017 May 10;19(18):11326-11339. doi: 10.1039/c7cp01845b.

Abstract

Extraction of polar molecules by amphiphilic species results in a complex variety of clusters whose topologies and energetics control phase behavior and efficiency of liquid-liquid separations. A computational approach including quantum mechanical vibrational frequency calculations and molecular dynamics simulation with intermolecular network theory is used to provide a robust assessment of extractant and polar solute association through hydrogen bonding in the tributyl phosphate (TBP)/HNO/HO/dodecane system for the first time. The distribution of local topologies of the TBP/HNO/HO hydrogen bonded clusters is shown to be consistent with an equilibrium binding model. Mixed TBP/HNO/HO clusters are predicted that have not been previously observable in experiment due to limitations in scattering and spectroscopic resolution. Vibrational frequency calculations are compared with experimental data to validate the experimentally observed TBP-HNO-HNO Chain structure. At high nitric acid and water loading, large hydrogen-bonded clusters of 20 to 80 polar solutes formed. The cluster sizes were found to be exponentially distributed, consistent with a constant average solute association free energy in that size range. Due to the deficit of hydrogen bond donors in the predominantly TBP/HNO organic phase, increased water concentrations lower the association free energy and enable growth of larger cluster sizes. For sufficiently high water concentrations, changes in the cluster size distribution are found to be consistent with the formation of a percolating cluster rather than reverse micelles, as has been commonly assumed for the occurrence of an extractant-rich third phase in metal-free solvent extraction systems. Moreover, the compositions of the large clusters leading to percolation agrees with the 1 : 3 TBP : HNO ratio reported in the experimental literature for TBP/HNO/HO third phases. More generally, the network analysis of cluster formation from atomic level interactions could allow for control of phase behavior in multi-component solutions of species with a variety of hydrogen bond types.

摘要

两亲性物种对极性分子的萃取会产生种类繁多的簇,其拓扑结构和能量学控制着液-液分离的相行为和效率。首次采用一种计算方法,包括量子力学振动频率计算和基于分子间网络理论的分子动力学模拟,以通过磷酸三丁酯(TBP)/HNO/H₂O/十二烷体系中的氢键作用,对萃取剂与极性溶质的缔合进行可靠评估。结果表明,TBP/HNO/H₂O氢键簇的局部拓扑结构分布与平衡结合模型一致。预测了混合的TBP/HNO/H₂O簇,由于散射和光谱分辨率的限制,这些簇此前在实验中尚未观察到。将振动频率计算结果与实验数据进行比较,以验证实验观察到的TBP-HNO-HNO链结构。在高硝酸和水负载量下,形成了由20至80个极性溶质组成的大氢键簇。发现簇尺寸呈指数分布,这与该尺寸范围内恒定的平均溶质缔合自由能一致。由于主要为TBP/HNO的有机相中氢键供体不足,水浓度的增加会降低缔合自由能,并使更大尺寸的簇得以生长。对于足够高的水浓度,发现簇尺寸分布的变化与渗流簇的形成一致,而不是与反胶束一致,而在无金属溶剂萃取体系中,通常认为反胶束的出现会导致富含萃取剂的第三相的形成。此外,导致渗流的大簇的组成与实验文献中报道的TBP/HNO/H₂O第三相的1:3 TBP:HNO比例一致。更一般地说,从原子水平相互作用对簇形成进行网络分析,可能有助于控制具有多种氢键类型的物种的多组分溶液中的相行为。

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